Derivation of spin-current high-harmonic selection rules that distinguish altermagnetic spin-group phases from ferromagnetic, antiferromagnetic, and magnetic-point-group mimics under different light polarizations in the weak-SOC regime.
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2 Pith papers cite this work. Polarity classification is still indexing.
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Odd-wave magnets exhibit magnetic Bloch oscillations and nonlinear Edelstein magnetization, proposed as detectable via higher-harmonic generation in THz spectroscopy.
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High-harmonic spin-current signatures of altermagnetic spin-group symmetry
Derivation of spin-current high-harmonic selection rules that distinguish altermagnetic spin-group phases from ferromagnetic, antiferromagnetic, and magnetic-point-group mimics under different light polarizations in the weak-SOC regime.
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Magnetic Bloch Oscillations in Odd-Wave Magnets and the Nonlinear Edelstein Effect
Odd-wave magnets exhibit magnetic Bloch oscillations and nonlinear Edelstein magnetization, proposed as detectable via higher-harmonic generation in THz spectroscopy.